• Heat Treated Alum Oxide - For Ferrous Metals, Stainless Steel
    Item #: 617 
    • Heat Treated Aluminum Oxide Grain For Cutting Ferrous Metals, Including Stainless Steel
    • Type 1 - For Use In Angle Grinders And Circular Saws
    • High Quality Metal Cutting Wheel
    • Clean Cuts With Minimal Burs
    • High Strength Double Reinforced
    • Extra Thin .045" For Smooth, Fast Cutting
    • 5/64" Models Are For Tough Cutting And Notching Where Stability Is Important
  • Aluminum Oxide - General Purpose For Ferrous Metals
    Item #: 618 
    • Aluminum Oxide Grain For Cutting Ferrous Metals
    • Type 27 Depressed Center Shape Has A Recess For A Hub, Which Allows For A Flush Cut
    • For Use In Angle Grinders
    • General Purpose Wheel
    • Clean Cuts With Minimal Burs
    • High Strength Double Reinforced
    • Extra Thin .045" For Smooth, Fast Cutting
    • 3/32" Models Are For Tough Cutting And Notching Where Stability Is Important
    • 618010P Is A 10 Pack
  • Zirconia - For Ferrous Metals, Especially Stainless Steel
    Item #: 632 
      • Zirconia Grain For Cutting Ferrous Metals, Especially Stainless Steel
      • Type 27 Depressed Center Shape Has A Recess For A Hub, Which Allows For A Flush Cut
      • For Use In Angle Grinders
      • Self-Sharpening Grain Offers High Performance For Tough Applications
      • Constructed For Longer Life Than Standard Metal Cut-Off Wheels
      • Single Grit For Aggressive Material Removal
      • Clean Cuts With Minimal Burs
      • High Strength Double Reinforced
    Extra Thin .045" For Smooth, Fast Cutting
     
  • Heat Treated Alum Oxide - For Ferrous Metals, Stainless Steel Item #: 619 Heat Treated Aluminum Oxide Grain For Cutting Ferrous Metals, Including Stainless Steel Type 27 Depressed Center Shape Has A Recess For A Hub, Which Allows For A Flush Cut For Use In Angle Grinders High Quality Metal Cutting Wheel Clean Cuts With Minimal Burs High Strength Double Reinforced Extra Thin .045" For Smooth, Fast Cutting 3/32" And 5/64" Models Are For Tough Cutting And Notching Where Stability

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